Effects of Partial Pulp Removal on Microbial Dynamics and Metabolite Profiles During On-Farm Cocoa Fermentation

Partial cocoa pulp removal may modify substrate availability and affect microbial and metabolic dynamics during fermentation. This study evaluated the effects of beans with pulp and depulped beans on microbial dynamics and metabolite profiles during on-farm cocoa fermentation. Three treatments were evaluated for 144 h: CT, 100% beans with pulp; TA, 75% beans with pulp and 25% depulped beans; and TB, 50% beans with pulp and 50% depulped beans. Physicochemical parameters, culturable microbial populations, selected microbial isolates, sugars, and organic acids were analyzed throughout fermentation. Partial pulp removal was associated with differences in sugar and organic acid profiles, while temperature, pH, and titratable acidity showed the characteristic temporal progression of cocoa fermentation, with significant differences among treatments and fermentation times. Saccharomyces cerevisiae was frequently identified among selected yeast isolates, whereas Acetobacter sp. and Fructobacillus pseudoficulneus were among the bacterial taxa identified. Exploratory principal component and hierarchical cluster analyses indicated that fermentation time was the main factor associated with sample differentiation, while partial pulp removal showed secondary associations with physicochemical and microbiological profiles. Overall, partial pulp removal was associated with differences in microbial and metabolic profiles, indicating its potential for further investigation as a strategy to modulate cocoa fermentation.

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Publication Details

Journal
Foods
Published
2026-08-25
DOI
https://doi.org/10.3390/foods15172976
Primary Topic
Food Chemistry and Fat Analysis
Type
article
Field-Weighted Citation Impact
0.00

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article

Effects of Partial Pulp Removal on Microbial Dynamics and Metabolite Profiles During On-Farm Cocoa Fermentation

Nelson Rosa Ferreira, Alessandra Santos Lopes, Paulo Túlio de Souza Silveira, Diego Assis das Graças et al.
Foods
Food Chemistry and Fat Analysis
article

Effects of Partial Pulp Removal on Microbial Dynamics and Metabolite Profiles During On-Farm Cocoa Fermentation

Nelson Rosa Ferreira, Alessandra Santos Lopes, Paulo Túlio de Souza Silveira, Diego Assis das Graças, Gilson Celso Albuquerque Chagas, Braian Saimon Frota da Silva, Priscilla Efraim, Artur Silva, Dominic Wimmer, Anderson Moraes da Silva
article en

Abstract

Partial cocoa pulp removal may modify substrate availability and affect microbial and metabolic dynamics during fermentation. This study evaluated the effects of beans with pulp and depulped beans on microbial dynamics and metabolite profiles during on-farm cocoa fermentation. Three treatments were evaluated for 144 h: CT, 100% beans with pulp; TA, 75% beans with pulp and 25% depulped beans; and TB, 50% beans with pulp and 50% depulped beans. Physicochemical parameters, culturable microbial populations, selected microbial isolates, sugars, and organic acids were analyzed throughout fermentation. Partial pulp removal was associated with differences in sugar and organic acid profiles, while temperature, pH, and titratable acidity showed the characteristic temporal progression of cocoa fermentation, with significant differences among treatments and fermentation times. Saccharomyces cerevisiae was frequently identified among selected yeast isolates, whereas Acetobacter sp. and Fructobacillus pseudoficulneus were among the bacterial taxa identified. Exploratory principal component and hierarchical cluster analyses indicated that fermentation time was the main factor associated with sample differentiation, while partial pulp removal showed secondary associations with physicochemical and microbiological profiles. Overall, partial pulp removal was associated with differences in microbial and metabolic profiles, indicating its potential for further investigation as a strategy to modulate cocoa fermentation.

FoodsVol. 15(17)
Universidade Estadual de Campinas (UNICAMP) (BR), Fraunhofer Institute for Process Engineering and Packaging (DE), Ministry of Science, Technology and Innovation (BR), Universidade Federal do Pará (BR)
Fundação de Amparo à Pesquisa do Estado de São Paulo, Conselho Nacional de Desenvolvimento Científico e Tecnológico, Fundação Amazônia Paraense de Amparo à Pesquisa, Bundesministerium für Wirtschaft und Energie
Openalex Percentile: Top 13%
Food Chemistry and Fat Analysis
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